Antimony selenide (Sb2Se3) has gained promising attention as an inorganic absorber in thin-film photovoltaics and water splitting devices due to its excellent optoelectronic …
V–VI antimony chalcogenide semiconductors have shown exciting potentials for thin film photovoltaic applications. However, their solar cell efficiencies are strongly hampered by …
Compounds made up of metalloid/metallic cations and chalcogen anions like SnS, GeSe, and Sb 2 Se 3 have made a nonnegotiable impact in new and emerging absorbers for thin …
S Ghosh, MVB Moreira, C Fantini, JC González - Solar Energy, 2020 - Elsevier
Abstract Antimony selenide (Sb 2 Se 3) is a promising material for thin-film solar-cells due to its attractive optoelectronic properties with the desirable band gap. In the present work, four …
There has been a recent surge in interest toward thin film-based solar cells, specifically new absorber materials composed by Earth-abundant and non-toxic elements. Among these …
Sb2Se3 and Te-doped Sb2Se3 films of∼ 250 nm film thickness were deposited using a facile thermal evaporation technique from the bulk powder synthesized via the melt …
p‐type doping in antimony selenide (Sb2Se3) is an important issue to improve its photovoltaic performance, because the as‐grown Sb2Se3 usually shows weak p‐type …
The role of two defects in the ambipolar character of nanocrystalline selenium poor Sb2Se3 is studied. At low temperature, the electrical transport in Sb2Se3 thin films with nm‐sized …
L Yu, B Wang, H Han, C Dai, W Liu, Y Wang - Journal of Luminescence, 2022 - Elsevier
In this paper, Antimony selenide (Sb 2 Se 3) nanorods are prepared by the hot solvent method, the Sb 2 Se 3 is detected by near-infrared detectors with good photoelectric …